为了解新型环保工质R1234ze(E)微小通道内的冷凝换热及阻力特性,提出采用VOF(volume of fluid)模型对R1234ze(E)和R134a(Tsat=40℃)在水平微细圆管(Dh=1mm)内的冷凝过程进行数值模拟研究,探讨质量流量、干度以及物性对管内冷凝换热和阻...为了解新型环保工质R1234ze(E)微小通道内的冷凝换热及阻力特性,提出采用VOF(volume of fluid)模型对R1234ze(E)和R134a(Tsat=40℃)在水平微细圆管(Dh=1mm)内的冷凝过程进行数值模拟研究,探讨质量流量、干度以及物性对管内冷凝换热和阻力性能的影响。结果表明,R1234ze(E)和R134a的换热系数和压降都随质量流速和干度的增大而增大。相同情况下,R1234ze(E)换热系数小于R134a,但压降大于R134a。R1234ze(E)的液膜厚度平均要比R134a薄15.7%。当气液两相都为湍流,有效热导率对不同工质在水平圆管内的冷凝换热性能有重要影响。R1234ze(E)在管内的液膜分布特性整体上和R134a相似。现有的关联式对R1234ze(E)的压降都存在一定的低估,平均绝对误差都在30%左右。展开更多
This paper is a further study of two papers [1] and [2], which were related to Ill-Conditioned Load Flow Problems and were published by IEEE Trans. PAS. The authors of this paper have some different opinions, for exam...This paper is a further study of two papers [1] and [2], which were related to Ill-Conditioned Load Flow Problems and were published by IEEE Trans. PAS. The authors of this paper have some different opinions, for example, the 11-bus system is not an ill-conditioned system. In addition, a new approach to solve Load Flow Problems, E-ψtc, is introduced. It is an explicit method;solving linear equations is not needed. It can handle very tough and very large systems. The advantage of this method has been fully proved by two examples. The authors give this new method a detailed description of how to use it to solve Load Flow Problems and successfully apply it to the 43-bus and the 11-bus systems. The authors also propose a strategy to test the reliability, and by solving gradient equations, this new method can answer if the solution exists or not.展开更多
文摘为了解新型环保工质R1234ze(E)微小通道内的冷凝换热及阻力特性,提出采用VOF(volume of fluid)模型对R1234ze(E)和R134a(Tsat=40℃)在水平微细圆管(Dh=1mm)内的冷凝过程进行数值模拟研究,探讨质量流量、干度以及物性对管内冷凝换热和阻力性能的影响。结果表明,R1234ze(E)和R134a的换热系数和压降都随质量流速和干度的增大而增大。相同情况下,R1234ze(E)换热系数小于R134a,但压降大于R134a。R1234ze(E)的液膜厚度平均要比R134a薄15.7%。当气液两相都为湍流,有效热导率对不同工质在水平圆管内的冷凝换热性能有重要影响。R1234ze(E)在管内的液膜分布特性整体上和R134a相似。现有的关联式对R1234ze(E)的压降都存在一定的低估,平均绝对误差都在30%左右。
文摘This paper is a further study of two papers [1] and [2], which were related to Ill-Conditioned Load Flow Problems and were published by IEEE Trans. PAS. The authors of this paper have some different opinions, for example, the 11-bus system is not an ill-conditioned system. In addition, a new approach to solve Load Flow Problems, E-ψtc, is introduced. It is an explicit method;solving linear equations is not needed. It can handle very tough and very large systems. The advantage of this method has been fully proved by two examples. The authors give this new method a detailed description of how to use it to solve Load Flow Problems and successfully apply it to the 43-bus and the 11-bus systems. The authors also propose a strategy to test the reliability, and by solving gradient equations, this new method can answer if the solution exists or not.